Hot cracking resistant mixed-crystal hard alloy and preparation method thereof

A cemented carbide and thermal crack resistance technology, applied in the field of cemented carbide, can solve the problems that the accuracy and stability of the twin crystal structure affect the performance, cannot accurately reflect the real grain size of WC, and cannot control the stability of the twin crystal structure. , to achieve the effect of good thermal crack resistance, high hardness and not easy to drop blocks

Pending Publication Date: 2019-03-19
ZHUZHOU HARD ALLOY GRP CO LTD
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the preparation of twin crystal alloys, Fsss particle size is used to select raw materials, and the Fsss particle size range and matching ratio of coarse and fine WC are controlled. Most of them adopt batch ball milling technology in the ball milling process, and even prolong the ball milling time to achieve higher density. However, the Fsss particle size characterization is the size of WC particles, which cannot accurately reflect the real grain size of WC
Due to the fluctuation of raw material morphology, the crystallinity and activity of WC with the same Fsss particle size will be different, so that the grain size of WC with the same Fsss particle size will change, and then the wear resistance of WC will change. A variety of fluctuating WC grains undergo Ball milling and sintering make the ratio of coarse and fine grains in the twin crystal alloy structure also fluctuate, which directly leads to large fluctuations in performance
In some studies, the concept of optimizing the grain size and particle size of the alloy (grain distribution peak) is also proposed; magnetic force is also used to control the combination of coarse, medium and fine WC, but none of them can control the stability of the twin crystal structure.
Practice has proved that the accuracy and stability of the twin crystal structure affect its performance, which is the crux of the unstable quality of the twin crystal alloy

Method used

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  • Hot cracking resistant mixed-crystal hard alloy and preparation method thereof
  • Hot cracking resistant mixed-crystal hard alloy and preparation method thereof
  • Hot cracking resistant mixed-crystal hard alloy and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0062] Cemented carbide includes: 76.4wt% hard phase WC, 22wt% binder phase Co and Ni and 1.6wt% Cr 3 C 2 .

[0063] The hard phase uses two kinds of WC raw materials with different Hc. The Hc value of the crude WC raw material is 3.8kA / m. 2 C, meeting the wear resistance requirements of ball milling; the Hc value of fine WC is 6.6kA / m, and the mass ratio of coarse and fine WC is 2.6:1. The mass ratio of Co and Ni is 1:1.

[0064] The hard phase, binder phase and Cr 3 C 2 Mix to obtain the raw material mixture, put the raw material mixture into the ball mill, the ratio of ball to material is 3:1, add alcohol, the ratio of the amount of alcohol added to the raw material mixture is 0.28L / 1kg, the molding agent is paraffin, and the amount of paraffin wax is the mass of the raw material mixture 2.0%, ball milling time 18 hours, through drying, pressing, low-pressure sintering to produce cemented carbide with mixed crystal grain size, the metallographic photo of cemented carbi...

Embodiment 2

[0066] The cemented carbide includes: 74.4wt% hard phase WC, 24wt% binder phases Co and Ni and 1.6wt% TaC.

[0067] The hard phase uses two kinds of WC raw materials with different Hc. The Hc value of the crude WC raw material is 4.2kA / m. 2 C, meeting the requirements of ball milling wear resistance; the Hc value of fine WC raw material is 6.6kA / m, the mass ratio of coarse WC and fine WC is 3.07:1; the mass ratio of Co and Ni in the binder phase is 2:1.

[0068] Mix the hard phase, binder phase and TaC to obtain a raw material mixture, put the raw material mixture into a ball mill, the ball-to-material ratio is 3:1, add alcohol, the ratio of the amount of alcohol added to the raw material mixture is 0.30L / kg, the forming agent It is paraffin wax, the mass ratio of the amount of paraffin wax to the raw material mixture is 2.0%, and the ball milling time is 16 hours. After drying, pressing, and low-pressure sintering, a cemented carbide with mixed crystal diameter is produced. T...

Embodiment 3

[0070] Cemented carbide includes: 72wt% hard phase WC, 26wt% binder phase Co and Ni and 2.0wt% Cr 3 C 2 .

[0071] The hard phase uses two kinds of WC raw materials with different Hc. The Hc value of the crude WC raw material is 4.0kA / m, and it is carbonized at 2400°C. 2 C, meeting the wear resistance requirements of ball milling, the Hc value of fine WC raw materials is 7.2kA / m, the mass ratio of coarse WC and fine WC is 3.2:1, and the mass ratio of Co and Ni is 2:1.

[0072] The hard phase, binder phase and Cr 3 C 2 Mix to obtain the raw material mixture, add the raw material mixture in the ball mill, the ball-to-material ratio is 3:1, add alcohol, the ratio of the amount of alcohol added to the raw material mixture is 0.32L / 1kg, the molding agent is paraffin, the consumption of paraffin and the ratio of the raw material mixture The mass ratio is 2.0%, and the ball milling time is 17 hours. After drying, pressing, and low-pressure sintering, an alloy with mixed crystal d...

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Abstract

The invention discloses a hot cracking resistant mixed-crystal hard alloy and a preparation method thereof. The hot cracking resistant mixed-crystal hard alloy comprises a hard phase, a bonding phraseand optional temperature resistant components. The hard phase comprises coarse tungsten carbide (WC) and fine WC. The ratio of the average crystal diameter of the coarse WC to the average crystal diameter of the fine WC is (1.7: 2.1). The average grain size of the hard alloy is between 2.4 Mu m and 3.4 Mu m. According to the hot cracking resistant mixed-crystal hard alloy provided, control over the average crystal diameter ratio of of the coarse WC to the fine WC is accurate; intensity is high; rigidity is high; and the hot cracking resistant property is good. When the hard alloy is used in an environment of thermal mechanical corrosion fatigue, crack initiation is late; hot crack growth is slow; the hard alloy is especially suitable for rolling of threaded steel on a small profile rolling mill; blocks are not easy to drop; rolled steel is good in quality; and the service life is improved by more than 20%.

Description

technical field [0001] The invention belongs to the technical field of hard alloys, and relates to a thermal cracking-resistant mixed crystal hard alloy and a preparation method thereof. Background technique [0002] Under normal circumstances, the toughness and wear resistance of cemented carbide are a pair of contradictions, and the strength and hardness are routine testing indicators. Fine-grained and ultra-fine-grained alloys can obtain high strength and high hardness at the same time, but their toughness is poor; coarse-grained high-binder phase alloys have better toughness, but their strength generally decreases with the decrease of hardness. To achieve better hardness and strength for coarse-grained high-binder phase cemented carbide, the conventional method is to use a longer ball milling time, but in this way, the grain size of the alloy decreases, which reduces the toughness and thermal conductivity of the alloy. For cemented carbide used under high temperature an...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C29/08C22C1/05C22C1/10
CPCC22C1/051C22C29/005C22C29/067C22C29/08
Inventor 彭文罗海辉金鹏郭忠伟管玉明
Owner ZHUZHOU HARD ALLOY GRP CO LTD
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